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Managing renewable energy and carbon footprint in multi-cloud computing environments

机译:在多云计算环境中管理可再生能源和碳足迹

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Cloud computing offers attractive features for both service providers and customers. Users benefit from the pay-as-you-go model by saving expenditures and service providers are deploying their services to cloud data centers to reduce their maintenance efforts. However, due to the fast growth of cloud data centers, the energy consumed by the data centers can lead to a huge amount of carbon emission with environmental impacts, and the carbon intensity of different locations are varied among different power plants according to the sources of energy. Thus, in this paper, to address the carbon emission problem of data centers, we consider shifting the workloads among multi-cloud located in different time zones. We also formulate the energy usage and carbon emission of data centers and model the solar power corresponding to the locations. This helps to reduce the usage of brown energy and maximize the utilization of renewable energy at different locations. We propose an approach for managing carbon footprint and renewable energy for multiple data centers at California, Virginia, and Dublin, which are in different time zones. The results show that our proposed approaches that apply workload shifting can reduce around 40% carbon emission in comparison to the baseline while ensuring the average response time of user requests. (C) 2019 Elsevier Inc. All rights reserved.
机译:云计算为服务提供商和客户提供有吸引力的功能。用户通过节省开支而受益于按需付费模式,服务提供商将其服务部署到云数据中心以减少维护工作量。但是,由于云数据中心的快速增长,数据中心消耗的能量会导致大量的碳排放,并受到环境的影响,并且根据电厂的来源,不同电厂之间不同地点的碳强度也会有所不同。能源。因此,在本文中,为了解决数据中心的碳排放问题,我们考虑在位于不同时区的多云之间转移工作负载。我们还制定了数据中心的能源使用量和碳排放量,并对与这些地点相对应的太阳能进行了建模。这有助于减少棕色能源的使用,并最大限度地利用可再生能源。我们为加利福尼亚,弗吉尼亚和都柏林(位于不同时区)的多个数据中心提出了一种管理碳足迹和可再生能源的方法。结果表明,我们提出的应用工作负载转移的方法与基线相比可以减少大约40%的碳排放,同时确保用户请求的平均响应时间。 (C)2019 Elsevier Inc.保留所有权利。

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